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在印茄优质种子发育和萌发过程中贮藏蛋白的协同变化,印茄是一种多功能生物柴油豆科植物。

Coordinated changes in storage proteins during development and germination of elite seeds of Pongamia pinnata, a versatile biodiesel legume.

机构信息

Department of Biotechnology , Indian Institute of Technology Guwahati, Assam 781 039 , India.

出版信息

AoB Plants. 2011;2011:plr026. doi: 10.1093/aobpla/plr026. Epub 2011 Sep 19.

Abstract

BACKGROUND AND AIMS

The oleaginous legume Pongamia pinnata is a rapidly growing and economically important tree. The seeds are used increasingly as feedstock for biodiesel production, with the protein-rich residue providing valuable supplement to farm animal diets. However, little is known about seed development and the characteristics of germination. We therefore studied morphological, protein and ultrastructural changes during seed maturation and germination using seeds from a tree selected for superior morphological and reproductive characters (candidate plus tree).

METHODOLOGY

Phenology, sodium dodecyl sulphate-polyacrylamide gel electrophoresis (SDS-PAGE), and scanning and transmission electron microscopy were used to investigate seed development from 90 to 350 days after flowering (DAF), and germination and seedling development from 0 to 45 days after the start of imbibition (DAI) (Stages 0-VII).

PRINCIPAL RESULTS

Seven distinct developmental stages were identified during seed development. Fresh weight, length, breadth and thickness increased from Stage I (90 DAF) to V (270 DAF) and decreased at Stages VI (315 DAF) and VII (350 DAF), when the seeds were fully ripe. Marked changes in total soluble protein content and SDS-PAGE profile were observed in vegetative and reproductive tissues and in the cotyledons of germinating seedlings. Polypeptide fragments of 150-14 kDa were observed during seed maturation and germination. In SDS-PAGE the expression of three main polypeptide bands (50, 18 and 14 kDa) increased from Stage I to Stage V and then almost became the same until Stage VII during seed maturation. During germination the expression of 50 kDa polypeptide decreased and that of 18 and 14 kDa increased from Stage 0 (ungerminated seed) to Stage VI (30 DAI), respectively; however, all three polypeptides (50, 18 and 14 kDa) completely disappeared at Stage VII (45 DAI). Ultrastructural changes during four stages of seed maturation (early immature, 90-135 DAF; late immature, 180-225 DAF; early mature, 225-270 DAF; and late mature, 315-350 DAF) and three stages of germination and seedling development (early 10 DAI to late 45 DAI) localized marked gradients in protein storage reserves.

CONCLUSIONS

Increasing the knowledge base for P. pinnata, especially for its seeds, is an essential prerequisite for rapid and successful exploitation of this promising energy and animal feed crop. Our findings contribute to this by establishing key developmental features of the seeds as they form and germinate.

摘要

背景与目的

油质豆科植物麻疯树是一种生长迅速且具有重要经济价值的树种。其种子正被越来越多地用作生物柴油生产的原料,富含蛋白质的残渣为农场动物饲料提供了有价值的补充。然而,对于种子发育和发芽特性知之甚少。因此,我们选择了一棵在形态和繁殖特性方面表现优异的树(候选优树),研究了种子从开花后 90 天到 350 天(DAF)的成熟过程以及从开始吸胀后 0 天到 45 天(DAI)的发芽和幼苗发育过程中的形态、蛋白质和超微结构变化。

方法

使用开花后 90 天到 350 天(DAF)的种子和开始吸胀后 0 天到 45 天(DAI)的种子(阶段 0-VII)进行了物候学、十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)和扫描及透射电子显微镜研究。

主要结果

在种子发育过程中确定了七个不同的发育阶段。从第 I 阶段(90 DAF)到第 V 阶段(270 DAF),鲜重、长度、宽度和厚度增加,然后在第 VI 阶段(315 DAF)和第 VII 阶段(350 DAF)下降,此时种子完全成熟。在营养组织和生殖组织以及发芽幼苗的子叶中观察到总可溶性蛋白含量和 SDS-PAGE 图谱的明显变化。在种子成熟和发芽过程中观察到 150-14 kDa 的多肽片段。在 SDS-PAGE 中,50、18 和 14 kDa 三种主要多肽带的表达从第 I 阶段到第 V 阶段增加,然后在第 VII 阶段(种子成熟)几乎相同。在发芽过程中,50 kDa 多肽的表达减少,18 和 14 kDa 的表达增加,从第 0 阶段(未发芽的种子)到第 VI 阶段(30 DAI),然而,所有三种多肽(50、18 和 14 kDa)在第 VII 阶段(45 DAI)完全消失。在四个种子成熟阶段(早期未成熟,90-135 DAF;晚期未成熟,180-225 DAF;早期成熟,225-270 DAF;晚期成熟,315-350 DAF)和三个发芽和幼苗发育阶段(早期 10 DAI 至晚期 45 DAI)的三个阶段,对蛋白质储存物质的定位进行了研究。

结论

增加对麻疯树,特别是其种子的知识基础,是快速成功利用这一有前途的能源和动物饲料作物的必要前提。我们的研究结果通过确定种子形成和发芽过程中的关键发育特征,为此做出了贡献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09a4/3243569/49fd30313c65/plr02601.jpg

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